Glucose moisturizing liquid fruity beverage production wastewater treatment equipment

By setting up agitation mixing, jet assisting and automatic discharge mechanisms, the problems of low mixing efficiency and difficulty in floc recovery in wastewater treatment for fruity beverages for glucose water replenishment liquid are solved, and efficient wastewater treatment and floc recovery are achieved.

CN120364818APending Publication Date: 2025-07-25HENAN SANNUO FOOD CO LTD
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Patent Information

Application Number
CN202510711919.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

In the wastewater treatment of existing glucose water replenishing liquid fruit-flavored beverages, the mixing efficiency is low, and floc settlement and accumulation leads to blockage and recycling, which affects the efficiency of wastewater treatment.

Method used

A wastewater treatment equipment for the production of fruity beverage with glucose replenishment liquid is designed, and an agitation mixing mechanism, a jet auxiliary mechanism, an automatic discharge mechanism and a cleaning mechanism are installed to achieve full mixing of wastewater and flocculant, convenient recycling of flocs and cleaning of the inner wall of the shell.

Benefits of technology

The mixing reaction efficiency of wastewater treatment is improved, efficient separation and recycling of flocs is achieved, the difficulty of cleaning is reduced, and the overall treatment efficiency and recycling effect are improved.

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Abstract

The invention discloses glucose moisturizing liquid fruity beverage production wastewater treatment equipment, and belongs to the technical field of wastewater treatment equipment.The glucose moisturizing liquid fruity beverage production wastewater treatment equipment comprises a shell, a sliding door is rotationally arranged on the front side of the shell, a discharging pipe is arranged at the inner bottom of the shell, and an annular connecting plate is fixedly connected to the inner bottom of the shell; the stirring and mixing mechanism comprises a double-shaft motor mounted at the upper end of the shell, a first rotating shaft is rotationally connected to the inner top of the shell, a rectangular connecting strip is fixedly connected to the lower end of the first rotating shaft, and a lifting top plate capable of moving up and down is arranged in the shell. Aiming at the use problem, the device is provided with the stirring and mixing mechanism to realize the mixing of wastewater and a flocculating agent and the recovery of a flocculating constituent, is provided with the air injection auxiliary mechanism to cooperate with the automatic discharging mechanism to improve the reaction efficiency and subsequent separation and recovery, and is also provided with the cleaning mechanism to realize the cleaning of the inner wall of the shell.
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Description

Technical Field

[0001] The present invention relates to the technical field of wastewater treatment equipment, and particularly to a wastewater treatment equipment for the production of glucose replenishing liquid fruit-flavored beverage. Background Art

[0002] Glucose replenishing liquid fruit-flavored beverage is a functional beverage added with glucose and fruit flavor components, mainly used for quickly replenishing energy and moisture. During its production and processing, the generated waste liquid usually needs to be treated to achieve resource recovery and avoid environmental pollution.

[0003] Currently, in the treatment process of the wastewater from the production of glucose replenishing liquid fruit-flavored beverage, the conventional process requires the wastewater to be fully mixed with a flocculant and then settled to remove suspended solids, color, and part of the chemical oxygen demand in the wastewater. However, the existing treatment systems generally use simple stirring rods for mixing, and the mixing efficiency and mixing effect of this mixing method are relatively average, thus affecting the overall treatment efficiency of the wastewater. In addition, after the settlement is completed, since the flocs will settle and accumulate at the bottom of the wastewater, the accumulation and blockage of the flocs will affect the subsequent recovery efficiency of the wastewater and increase the difficulty of recovering and cleaning the flocs. Therefore, to solve these problems, designing a wastewater treatment equipment for the production of glucose replenishing liquid fruit-flavored beverage is what we need to consider. Summary of the Invention

[0004] The purpose of the present invention is to solve the deficiencies existing in the prior art, and a wastewater treatment equipment for the production of glucose replenishing liquid fruit-flavored beverage is proposed. In view of the usage problems, this device is provided with a stirring and mixing mechanism, which can realize the mixing of wastewater and flocculant and the recovery of flocs, a jet-assisted mechanism, which can cooperate with the automatic discharging mechanism to improve the reaction efficiency and subsequent separation and recovery, and a cleaning mechanism, which can realize the cleaning of the inner wall of the shell.

[0005] To achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A production wastewater treatment device for glucose replenishing fruit - flavored beverage, comprising a housing. A sliding door is rotatably arranged on the front side of the housing. A discharge pipe is arranged at the inner bottom of the housing. An annular connecting plate is fixedly connected to the inner bottom of the housing; a stirring and mixing mechanism, which includes a double - shaft motor installed at the upper end of the housing. A first rotating shaft is rotatably connected to the inner top of the housing. A rectangular connecting bar is fixedly connected to the lower end of the first rotating shaft. A liftable top plate is arranged in the housing and can move up and down. A rectangular connecting plate is arranged below the liftable top plate. The rectangular connecting plate and the liftable top plate are elastically connected by a plurality of first springs. A second rotating shaft is arranged through the middle of the rectangular connecting plate and is rotatably connected to the rectangular connecting plate. A plurality of stirring rods and a circular filter screen are fixedly connected to the outer side of the second rotating shaft. The lower end of the circular filter screen is in contact with the inner bottom of the housing; a jet - assisted mechanism, which is used to accelerate the wastewater treatment efficiency; an automatic discharging mechanism, which is used to control and achieve automatic discharging; a cleaning mechanism, which is used to automatically clean the inside of the housing.

[0007] Preferably, a first bevel gear is fixedly connected to the left output shaft of the double - shaft motor. The upper end of the first rotating shaft penetrates through the inner top of the housing and is provided with a second bevel gear. A one - way bearing is arranged between the first rotating shaft and the second bevel gear. The first bevel gear and the second bevel gear are meshed. A rectangular through - slot is opened at the upper end of the second rotating shaft. The lower end of the rectangular connecting bar penetrates through the liftable top plate and is slidably connected to the inner wall of the rectangular through - slot. A hydraulic telescopic rod is installed at the upper end of the housing. The telescopic end of the hydraulic telescopic rod extends into the housing and is fixedly connected to the upper end of the liftable top plate.

[0008] Preferably, the jet - assisted mechanism includes a transmission installed at the upper end of the housing. The left input shaft of the transmission is fixedly connected to the right output shaft of the double - shaft motor. A circular turntable is fixedly connected to the right output shaft of the transmission. A piston cylinder is fixedly connected to the right side of the housing. A piston block that can move up and down is slidably connected in the piston cylinder. A connecting rod is rotatably connected to the eccentric position on the right side of the circular turntable. The other end of the connecting rod is rotatably connected to the upper end of the piston block. A heating box is fixedly connected to the right side of the housing. An electric heating wire is arranged in the heating box. The inner top of the heating box and the inner bottom of the piston cylinder are communicated through a first air pipe. An air inlet is opened at the inner bottom of the piston cylinder. One - way valves are arranged in both the first air pipe and the air inlet. An annular jet cavity is opened in the annular connecting plate. The inner bottom of the heating box and the inner bottom of the annular jet cavity are communicated through a second air pipe. A plurality of jet holes are opened on the inner side wall of the annular jet cavity.

[0009] Preferably, an annular sealing block is fixedly connected to the inner top of the lifting top plate, and sealing rings are provided at the lower end of the discharge pipe, the lower end of the lifting top plate, and the lower end of the annular sealing block.

[0010] Preferably, the automatic discharging mechanism is fixedly connected to the L-shaped connecting plate on the left side of the lifting top plate. A roller is rotatably provided at the lower end of the L-shaped connecting plate. A fixing plate is fixedly connected to the lower end of the housing. A baffle is provided on the left side of the fixing plate. Two cylindrical inner grooves are opened on the right side of the baffle. Two first guiding rods are fixedly connected to the left side of the fixing plate. The left ends of the two first guiding rods are slidably connected to the inner walls of the corresponding cylindrical inner grooves. The baffle and the fixing plate are elastically connected by a plurality of second springs. A liquid discharge port is vertically opened at the upper end of the baffle.

[0011] Preferably, the left side surface of the baffle is set as an inclined surface. The baffle cooperates with the roller, and the upper end of the baffle is attached to the sealing ring at the lower end of the discharge pipe.

[0012] Preferably, the cleaning mechanism includes a third rotating shaft rotatably connected between the inner walls on the front and rear sides of the housing. A transmission gear and a wire winding roller are fixedly connected to the third rotating shaft. A rack is fixedly connected to the upper end of the lifting top plate. The rack meshes with the transmission gear. An annular scraping plate that can move up and down is arranged in the housing. The outer side of the annular scraping plate is attached to the inner wall of the housing. The upper end of the annular scraping plate is connected to the wire winding roller through a connecting rope. Two second guiding rods are fixedly connected to the inner top of the housing. Both of the two second guiding rods penetrate through the annular scraping plate and are slidably connected to the annular scraping plate.

[0013] Preferably, an annular slag discharge port is opened at the inner bottom of the housing, and the inner wall of the housing and the inner bottom of the housing are fixedly connected by a plurality of fixing blocks.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] 1. A stirring and mixing mechanism is provided. By starting the double-shaft motor to drive the first rotating shaft to rotate, driving the second rotating shaft to rotate, a plurality of stirring rods can be driven to rotate, so as to realize the full mixing of wastewater and flocculant. And then controlling the hydraulic telescopic rod to drive the plurality of stirring rods and the circular filter screen to move upward, and cooperating with the double-shaft motor to drive the plurality of stirring rods and the circular filter screen to rotate, the floccules adhered thereto can be thrown off by centrifugal force, so as to realize the convenient recovery of the floccules.

[0016] 2. A jet-assisted mechanism is provided. When the dual-axis motor starts, it can drive the piston block to move up and down in the piston cylinder to pump and heat the external gas and eject it through multiple air nozzles. The ejected hot gas can further improve the mixing reaction efficiency of the wastewater and the flocculant. Subsequently, under the sealed condition of the upper space of the annular connecting plate, high pressure is formed by continuous air supply. In cooperation with the circular filter screen, the wastewater and the flocculant can be efficiently separated and recovered. Moreover, under the sealed condition of the lower space of the annular connecting plate, the flocculant in the circular filter screen can be blown out by the air flow, further improving the recovery effect of the flocculant.

[0017] 3. An automatic discharging mechanism is provided. When the lifting top plate moves, it can drive the roller to move synchronously. In cooperation with the baffle and multiple second springs, it can control the connection and sealing of the liquid discharge port and the discharge pipe, thereby assisting the jet-assisted mechanism to recover the wastewater and subsequently recover the flocculant in the circular filter screen.

[0018] 4. A cleaning mechanism is provided. When the lifting top plate moves, it can drive the rack to move synchronously. In cooperation with the transmission gear, the third rotating shaft, and the wire winding roller, it can control the winding and unwinding of the connecting rope, thereby realizing the cleaning of the residual flocculant on the inner wall of the shell by the annular scraper, further improving the cleaning and recovery effect of the flocculant.

[0019] In summary, a stirring and mixing mechanism is provided, which can achieve the full mixing of the wastewater and the flocculant and the subsequent recovery of the flocculant. A jet-assisted mechanism is provided, which can improve the reaction efficiency of the wastewater and the flocculant in cooperation with the automatic discharging mechanism, and can also assist in realizing the separation and recovery of the wastewater and the flocculant. A cleaning mechanism is also provided, which can realize the cleaning of the flocculant on the inner wall of the shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 FIG. is a schematic structural diagram of a wastewater treatment device for producing a glucose-supplemented fruit-flavored beverage proposed by the present invention;

[0021] Figure 2 is Figure 1 a partial structural cross-sectional view of;

[0022] Figure 3 is Figure 2 a partial structural bottom view of;

[0023] Figure 4 is a partial structural cross-sectional view of the stirring and mixing mechanism and the jet-assisted mechanism;

[0024] Figure 5 is Figure 4 an enlarged view of part A of;

[0025] Figure 6 is a partial structural cross-sectional view at the cleaning mechanism;

[0026] Figure 7 For Figure 6 the enlarged view of part B of

[0027] In the figure: 1 housing, 2 sliding door, 3 discharge pipe, 4 annular connecting plate, 5 biaxial motor, 6 first rotating shaft, 7 rectangular connecting bar, 8 lifting top plate, 9 rectangular connecting plate, 10 first spring, 11 second rotating shaft, 12 stirring rod, 13 circular filter screen, 14 first bevel gear, 15 second bevel gear, 16 rectangular through slot, 17 hydraulic telescopic rod, 18 transmission, 19 circular turntable, 20 piston cylinder, 21 piston block, 22 connecting rod, 23 heating box, 24 heating wire, 25 first gas transmission pipe, 26 air inlet, 27 annular jet cavity, 28 second gas transmission pipe, 29 jet hole, 30 annular sealing block, 31 L-shaped connecting plate, 32 roller, 33 fixing plate, 34 baffle plate, 35 first guide rod, 36 second spring, 37 liquid discharge port, 38 third rotating shaft, 39 transmission gear, 40 winding roller, 41 rack, 42 annular scraping plate, 43 connecting rope, 44 second guide rod, 45 annular slag discharge port, 46 fixing block. Specific embodiments

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.

[0029] It should be noted that the terms used here are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used here, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0030] Referring to Figures 1-7 , a production wastewater treatment device for glucose replenishing fruit flavored beverage, comprising a housing 1. A sliding door 2 is rotatably arranged on the front side of the housing 1. An observation window is arranged on the sliding door 2 for the staff to observe the inside of the housing 1. A discharge pipe 3 is arranged at the inner bottom of the housing 1 for recycling wastewater. A sealing ring is arranged at the lower end of the discharge pipe 3. An annular connecting plate 4 is fixedly connected to the inner bottom of the housing 1. An annular slag discharge port 45 is opened at the inner bottom of the housing 1 for recycling the floccules on the inner wall of the housing 1. The inner wall of the housing 1 and the inner bottom of the housing 1 are fixedly connected by a plurality of fixing blocks 46;

[0031] Among them, it further includes a stirring and mixing mechanism. The stirring and mixing mechanism includes a double-shaft motor 5 installed at the upper end of the housing 1. The inner top of the housing 1 is rotatably connected to a first rotating shaft 6. The lower end of the first rotating shaft 6 is fixedly connected to a rectangular connecting bar 7. An elevating top plate 8 that can move up and down is arranged inside the housing 1. A sealing ring is arranged at the lower end of the elevating top plate 8. A rectangular connecting plate 9 is arranged below the elevating top plate 8. The rectangular connecting plate 9 and the elevating top plate 8 are elastically connected by a plurality of first springs 10. A second rotating shaft 11 is arranged through the middle of the rectangular connecting plate 9. The second rotating shaft 11 is rotatably connected to the rectangular connecting plate 9. A plurality of stirring rods 12 and a circular filter screen 13 are fixedly connected to the outer side of the second rotating shaft 11. The plurality of stirring rods 12 can stir and mix the wastewater and the flocculant. The circular filter screen 13 can separate the flocs generated by the reaction from the wastewater. The lower end of the circular filter screen 13 is in contact with the inner bottom of the housing 1. A sealing ring (not shown) is also arranged on the outer side of the circular filter screen 13, which can ensure the scraping and recovery of the flocs on the inner wall of the annular connecting plate 4 during subsequent upward movement.

[0032] Among them, the left output shaft of the double-shaft motor 5 is fixedly connected to a first bevel gear 14. The upper end of the first rotating shaft 6 penetrates through the inner top of the housing 1 (a bearing is arranged at the penetration), and a second bevel gear 15 is arranged. A one-way bearing is arranged between the first rotating shaft 6 and the second bevel gear 15. When the second bevel gear 15 is driven by the double-shaft motor 5 to rotate clockwise, the first rotating shaft 6 can rotate normally. When the second bevel gear 15 is driven to rotate counterclockwise, the first rotating shaft 6 will be locked. The first bevel gear 14 and the second bevel gear 15 are meshed. A rectangular through slot 16 is opened at the upper end of the second rotating shaft 11. The lower end of the rectangular connecting bar 7 penetrates through the elevating top plate 8 and is slidably connected to the inner wall of the rectangular through slot 16. A hydraulic telescopic rod 17 is installed at the upper end of the housing 1. The telescopic end of the hydraulic telescopic rod 17 extends into the housing 1 and is fixedly connected to the upper end of the elevating top plate 8.

[0033] Among them, it further includes a jet-assisted mechanism, which is used to accelerate the wastewater treatment efficiency. The jet-assisted mechanism includes a transmission 18 installed at the upper end of the housing 1. The left input shaft of the transmission 18 is fixedly connected to the right output shaft of the dual-shaft motor 5. The right output shaft of the transmission 18 is fixedly connected to a circular turntable 19. The transmission 18 can increase the rotation speed of the circular turntable 19, thereby realizing subsequent efficient jetting. The right side of the housing 1 is fixedly connected to a piston cylinder 20. A piston block 21 that can move up and down is slidably connected inside the piston cylinder 20. The right eccentric part of the circular turntable 19 is rotatably connected to a connecting rod 22. The other end of the connecting rod 22 is rotatably connected to the upper end of the piston block 21. The right side of the housing 1 is fixedly connected to a heating box 23. An electric heating wire 24 is arranged inside the heating box 23. The electric heating wire 24 can heat the passing gas. The inner top of the heating box 23 and the inner bottom of the piston cylinder 20 are communicated through a first air pipe 25. An air inlet 26 is opened at the inner bottom of the piston cylinder 20. Check valves are arranged inside the first air pipe 25 and the air inlet 26. The check valve inside the first air pipe 25 only allows the gas at the inner bottom of the piston cylinder 20 to flow into the heating box 23 unidirectionally. The check valve inside the air inlet 26 only allows the outside gas to flow into the inner bottom of the piston cylinder 20 unidirectionally. An annular jet cavity 27 is opened inside the annular connecting plate 4. The inner bottom of the heating box 23 and the inner bottom of the annular jet cavity 27 are communicated through a second air pipe 28. A plurality of jet holes 29 are opened on the inner side wall of the annular jet cavity 27. The inner top of the lifting top plate 8 is fixedly connected to an annular sealing block 30 (a through hole is opened in the middle of the lifting top plate 8 for the rectangular connecting strip 7 to pass through, and the annular sealing block 30 is used to seal the through hole here). A sealing ring is arranged at the lower end of the annular sealing block 30;

[0034] Among them, it further includes an automatic discharging mechanism, which is used to control and realize automatic discharging. The automatic discharging mechanism is fixedly connected to an L-shaped connecting plate 31 on the left side of the lifting top plate 8. A roller 32 is rotatably arranged at the lower end of the L-shaped connecting plate 31. The lower end of the housing 1 is fixedly connected to a fixing plate 33. A baffle 34 is arranged on the left side of the fixing plate 33. The left side surface of the baffle 34 is set as an inclined surface. The baffle 34 cooperates with the roller 32. When the roller 32 moves down and abuts against the baffle 34, the baffle 34 will automatically move to the right to realize the communication between the liquid discharge port 37 and the discharge pipe 3. The upper end of the baffle 34 fits with the sealing ring at the lower end of the discharge pipe 3. Two cylindrical inner grooves are opened on the right side of the baffle 34. Two first guide rods 35 are fixedly connected to the left side of the fixing plate 33. The left ends of the two first guide rods 35 are slidably connected to the inner walls of the corresponding cylindrical inner grooves. The baffle 34 and the fixing plate 33 are elastically connected through a plurality of second springs 36. A liquid discharge port 37 is vertically opened at the upper end of the baffle 34;

[0035] Among them, a cleaning mechanism is further included. The cleaning mechanism is used for automatically cleaning the inside of the housing 1. The cleaning mechanism includes a third rotating shaft 38 rotatably connected between the inner walls on the front and rear sides of the housing 1. A transmission gear 39 and a wire winding roller 40 are fixedly connected to the third rotating shaft 38. The upper end of the lifting top plate 8 is fixedly connected with a rack 41. The rack 41 meshes with the transmission gear 39. By controlling the lifting and lowering of the lifting top plate 8 to drive the rack 41 to move up and down, the winding and unwinding of the connecting rope 43 by the wire winding roller 40 can be controlled, so as to realize the lifting control of the annular scraping plate 42. An annular scraping plate 42 that can move up and down is arranged in the housing 1 (a counterweight block (not shown) is also arranged on the annular scraping plate 42 to ensure the stable downward movement of the subsequent annular scraping plate 42). The outer side of the annular scraping plate 42 is attached to the inner wall of the housing 1. By controlling the downward movement of the annular scraping plate 42, the floccules remaining on the inner wall of the housing 1 can be scraped off and recovered. The upper end of the annular scraping plate 42 is connected to the wire winding roller 40 through a connecting rope 43. Two second guide rods 44 are fixedly connected to the inner top of the housing 1. Both second guide rods 44 penetrate through the annular scraping plate 42 and are slidably connected to the annular scraping plate 42. The second guide rods 44 can improve the stability of the annular scraping plate 42 when moving up and down.

[0036] In the present invention, during use, first open the sliding door 2 and control the hydraulic telescopic rod 17 to drive the lifting top plate 8 to move upward. Pour the wastewater and flocculant to be treated into the inner side of the annular connecting plate 4. Then control the hydraulic telescopic rod 17 to drive the lifting top plate 8, the rectangular connecting plate 9, the second rotating shaft 11 and the circular filter screen 13 to move downward until the lower end of the circular filter screen 13 is attached to the inner bottom of the housing 1 (at this time, the lower end of the lifting top plate 8 is not attached to the upper end of the annular connecting plate 4). Close the sliding door 2 and start the double-shaft motor 5. Drive the first rotating shaft 6 and the rectangular connecting strip 7 to rotate clockwise through the first bevel gear 14 and the second bevel gear 15, and the second rotating shaft 11 and a plurality of stirring rods 12 can be driven to rotate clockwise synchronously, so as to realize the mixing of the wastewater and the flocculant.

[0037] During the startup process of the biaxial motor 5, the circular turntable 19 can be driven by the transmission 18 to rotate at a high speed. The piston block 21 is driven by the connecting rod 22 to reciprocate up and down in the piston cylinder 20. Through the use of the one-way valves in the first air pipe 25 and the air inlet 26, when the piston block 21 moves upward, the outside air will be unidirectionally pumped through the air inlet 26 into the bottom space of the piston cylinder 20. When the piston block 21 moves downward, the air in the bottom space of the piston cylinder 20 will be unidirectionally transported through the first air pipe 25 and the second air pipe 28 into the annular jet cavity 27 and ejected through multiple jet holes 29. During the transportation, when the air passes through the heating box 23, the heating wire 24 inside it can heat the air. In this way, by continuously ejecting hot air to impact the wastewater and the flocculant in the annular connecting plate 4, the mixing efficiency of the wastewater and the flocculant can be improved. At the same time, the heating of the wastewater and the flocculant by the hot air can further promote the reaction efficiency of the wastewater and the flocculant, thereby improving the overall treatment efficiency of the wastewater;

[0038] After the wastewater and the flocculant are fully mixed, the biaxial motor 5 is turned off and left to undergo a sedimentation reaction. After the sedimentation is complete, more flocs will cover the upper end and the inside of the circular filter 13 (this part of the flocs will significantly affect the discharge of the wastewater through the discharge pipe 3). The hydraulic telescopic rod 17 is controlled to drive the lifting top plate 8 to move downward until the sealing ring at the lower end of the lifting top plate 8 is in close contact with the upper end of the annular connecting plate 4. At the same time, the sealing ring at the lower end of the annular sealing block 30 will be in close contact with the upper end of the rectangular connecting plate 9, making the upper part of the annular connecting plate 4 in a sealed state. During the downward movement of the lifting top plate 8, the L-shaped connecting plate 31 and the roller 32 can be driven to move downward synchronously. When the roller 32 moves downward, it will abut against the inclined surface part on the left side of the baffle 34, causing the baffle 34 to move to the right under force (at this time, the two second springs 36 will be compressed under force). In this way, the liquid discharge port 37 on the baffle 34 can be controlled to communicate with the discharge pipe 3 for subsequent recovery of the wastewater. Then, the biaxial motor 5 is started to rotate in the reverse direction. Since a one-way bearing is provided between the first rotating shaft 6 and the second bevel gear 15, the first rotating shaft 6 will be locked, thus avoiding the flocs from being dispersed due to the rotation of the multiple stirring rods 12. When the biaxial motor 5 rotates, the outside air can be continuously transported into the annular connecting plate 4, causing the air pressure in the annular connecting plate 4 to continuously increase. In this way, the wastewater can be extruded from the flocs and the circular filter 13 by the air pressure and finally recovered through the discharge pipe 3. The entire process of recovering the wastewater is relatively convenient, and the efficient separation of the wastewater and the flocs is achieved, improving the recovered water quality of the wastewater;

[0039] After the wastewater is recovered, the hydraulic telescopic rod 17 is controlled to drive the lifting top plate 8 to move up, and the rectangular connecting plate 9, the second rotating shaft 11, the plurality of stirring rods 12 and the circular filter screen 13 are synchronously moved up until the lower end of the circular filter screen 13 moves to the upper end of the annular connecting plate 4. During the movement, the sealing ring part on the outer side of the circular filter screen 13 can scrape off the flocculants adhered to the inner wall of the annular connecting plate 4. At the same time, the lifting top plate 8 can synchronously drive the roller 32 to move up to release the resistance of the roller 32 to the baffle 34. Due to the elastic force of the two second springs 36, the baffle 34 will automatically move to the left so that the discharge port 37 is no longer connected to the discharge pipe 3, so that the lower layer of the annular connecting plate 4 will be in a sealed state again, and then the double-axis is started. The motor 5 drives the multiple stirring rods 12 and the circular filter screen 13 to rotate clockwise. The floccules on the multiple stirring rods 12 and the circular filter screen 13 can be thrown onto the inner wall of the shell 1 through the action of centrifugal force. At the same time, the dual-axis motor 5 cooperates with the transmission 18 to pump external gas into the piston cylinder 20 and spray it out at high speed through the multiple jet holes 29. The sprayed gas will flow upward due to the closed space below, so that the floccules remaining in the circular filter screen 13 are flushed out by the airflow, so that the floccules can be thrown onto the inner wall of the shell 1. The floccules on the inner wall of the shell 1 will automatically slide down under the influence of gravity, and can finally be recovered through the annular slag discharge port 45. The entire recovery process is relatively convenient and has a high recovery efficiency, so that subsequent wastewater treatment can be carried out;

[0040] It is worth mentioning that when the lifting top plate 8 moves up, it will drive the rack 41 to move up, drive the transmission gear 39 to rotate, drive the third rotating shaft 38 and the winding roller 40 to rotate, and the winding roller 40 can reel in the connecting rope 43 when it rotates, so as to drive the annular scraper 42 to move up to a high place in the shell 1 (to prevent the annular scraper 42 from affecting the automatic downward movement of the flocs on the inner wall of the shell 1). After the subsequent operation of throwing the flocs away is completed, the lifting top plate 8 can be controlled to move down, so that the winding roller 40 unwinds the connecting rope 43. Under the action of the counterweight block and gravity, the annular scraper 42 will automatically move down to scrape off the flocs remaining on the inner wall of the shell 1, thereby realizing convenient recovery of the flocs as a whole.

[0041] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein, for example. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units that are clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0042] As described above, it is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A wastewater treatment device for a glucose replenishing fruit-flavored beverage production, characterized in that, Including: A housing (1), a sliding door (2) is rotatably arranged on the front side of the housing (1), a discharge pipe (3) is arranged on the inner bottom of the housing (1), and an annular connecting plate (4) is fixedly connected to the inner bottom of the housing (1); A stirring and mixing mechanism, the stirring and mixing mechanism includes a double-shaft motor (5) installed at the upper end of the housing (1), a first rotating shaft (6) is rotatably connected to the inner top of the housing (1), a rectangular connecting bar (7) is fixedly connected to the lower end of the first rotating shaft (6), a liftable top plate (8) is arranged in the housing (1), a rectangular connecting plate (9) is arranged below the liftable top plate (8), the rectangular connecting plate (9) and the liftable top plate (8) are elastically connected by a plurality of first springs (10), a second rotating shaft (11) is arranged through the middle of the rectangular connecting plate (9), the second rotating shaft (11) is rotatably connected to the rectangular connecting plate (9), a plurality of stirring rods (12) and a circular filter screen (13) are fixedly connected to the outer side of the second rotating shaft (11), and the lower end of the circular filter screen (13) is attached to the inner bottom of the housing (1); A jet-assisted mechanism, the jet-assisted mechanism is used to accelerate the wastewater treatment efficiency; An automatic discharging mechanism, the automatic discharging mechanism is used to control and realize automatic discharging; A cleaning mechanism, the cleaning mechanism is used to automatically clean the inside of the housing (1).

2. The wastewater treatment equipment for a glucose replenishing fruit-flavored beverage according to claim 1, wherein, The left output shaft of the double-shaft motor (5) is fixedly connected to a first bevel gear (14), the upper end of the first rotating shaft (6) penetrates through the inner top of the housing (1) and is provided with a second bevel gear (15), a one-way bearing is arranged between the first rotating shaft (6) and the second bevel gear (15), the first bevel gear (14) and the second bevel gear (15) are meshed, a rectangular through groove (16) is opened at the upper end of the second rotating shaft (11), the lower end of the rectangular connecting bar (7) penetrates through the liftable top plate (8) and is slidably connected to the inner wall of the rectangular through groove (16), a hydraulic telescopic rod (17) is installed at the upper end of the housing (1), and the telescopic end of the hydraulic telescopic rod (17) extends into the housing (1) and is fixedly connected to the upper end of the liftable top plate (8).

3. A production wastewater treatment device for glucose replenishing fruit-flavored beverage according to claim 1, characterized in that, The jet-assisted mechanism includes a transmission (18) installed at the upper end of the housing (1). The left input shaft of the transmission (18) is fixedly connected to the right output shaft of the dual-shaft motor (5). The right output shaft of the transmission (18) is fixedly connected to a circular turntable (19). The right side of the housing (1) is fixedly connected to a piston cylinder (20). A piston block (21) that can move up and down is slidably connected inside the piston cylinder (20). The right eccentric part of the circular turntable (19) is rotatably connected to a connecting rod (22). The other end of the connecting rod (22) is rotatably connected to the upper end of the piston block (21). The right side of the housing (1) is fixedly connected to a heating box (23). An electric heating wire (24) is arranged inside the heating box (23). The inner top of the heating box (23) and the inner bottom of the piston cylinder (20) are communicated through a first air delivery pipe (25). An air inlet (26) is opened at the inner bottom of the piston cylinder (20). Check valves are arranged inside the first air delivery pipe (25) and the air inlet (26). An annular jet cavity (27) is opened inside the annular connecting plate (4). The inner bottom of the heating box (23) and the inner bottom of the annular jet cavity (27) are communicated through a second air delivery pipe (28). A plurality of jet holes (29) are opened on the inner side wall of the annular jet cavity (27).

4. A production wastewater treatment device for glucose replenishing fruit - flavored beverage according to claim 1, characterized in that, An annular sealing block (30) is fixedly connected to the inner top of the lifting top plate (8). Sealing rings are arranged at the lower end of the discharge pipe (3), the lower end of the lifting top plate (8), and the lower end of the annular sealing block (30).

5. A production wastewater treatment device for glucose-based fruit-flavored beverage, according to claim 1, wherein The automatic discharging mechanism is fixedly connected to an L-shaped connecting plate (31) on the left side of the lifting top plate (8). A roller (32) is rotatably arranged at the lower end of the L-shaped connecting plate (31). The lower end of the housing (1) is fixedly connected to a fixing plate (33). A baffle (34) is arranged on the left side of the fixing plate (33). Two cylindrical inner grooves are opened on the right side of the baffle (34). Two first guide rods (35) are fixedly connected to the left side of the fixing plate (33). The left ends of the two first guide rods (35) are slidably connected to the inner walls of the corresponding cylindrical inner grooves. The baffle (34) and the fixing plate (33) are elastically connected through a plurality of second springs (36). A liquid discharge port (37) is vertically opened at the upper end of the baffle (34).

6. The wastewater treatment equipment for producing glucose replenishing fruit-flavored beverage according to claim 5, characterized in that, The left side surface of the baffle (34) is arranged as an inclined surface. The baffle (34) cooperates with the roller (32). The upper end of the baffle (34) is in contact with the sealing ring at the lower end of the discharge pipe (3).

7. The wastewater treatment equipment for producing glucose replenishing fruit-flavored beverage according to claim 1, characterized in that, The cleaning mechanism includes a third rotating shaft (38) rotatably connected between the inner walls of the front and rear sides of the housing (1). A transmission gear (39) and a wire winding roller (40) are fixedly connected to the third rotating shaft (38). A rack (41) is fixedly connected to the upper end of the lifting top plate (8). The rack (41) meshes with the transmission gear (39). An annular scraping plate (42) that can move up and down is arranged in the housing (1). The outer side of the annular scraping plate (42) is attached to the inner wall of the housing (1). The upper end of the annular scraping plate (42) is connected to the wire winding roller (40) through a connecting rope (43). Two second guide rods (44) are fixedly connected to the inner top of the housing (1). Both of the two second guide rods (44) penetrate through the annular scraping plate (42) and are slidably connected to the annular scraping plate (42).

8. The wastewater treatment equipment for producing glucose replenishing fruit-flavored beverage according to claim 1, characterized in that, An annular slag discharge port (45) is formed in the inner bottom of the housing (1). The inner wall of the housing (1) and the inner bottom of the housing (1) are fixedly connected through a plurality of fixing blocks (46).

Citation Information

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